Assessment of Using Superconducting Magnetic Energy Storage for Current Harmonic Compensation

Francisco Simoesõ, V. Pires, J. Murta-Pina
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Abstract

This paper assesses the possibility of using superconducting magnetic energy storage to improve the power quality of a grid, more specifically integrated into a current harmonic compensation device. Superconducting magnetic energy storage stores energy in the magnetic field of a lossless superconducting coil. They show a low energy density, but these devices are able to release high powers (in the MW range) within short times (ms up to a few seconds). Therefore, superconducting magnetic energy storage are foreseen for ”power” applications, as power quality improvement, rather than for bulk energy storage. In this way, they are also envisaged to compensate low-frequency harmonics generated by wind generators. Simulations show that a superconducting magnetic energy storage unit can be added in a voltage source converter based active filter to further contribute to mitigate current harmonics and decrease total harmonic distortion. Several simulation runs will be presented with the purpose of highlighting the main conclusions regarding this approach.
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超导磁能储能用于电流谐波补偿的评价
本文评估了使用超导磁能存储来改善电网电能质量的可能性,更具体地说,是集成到电流谐波补偿装置中。超导磁能存储器将能量储存在无损超导线圈的磁场中。它们显示出低能量密度,但这些设备能够在短时间内(毫秒到几秒钟)释放高功率(在兆瓦范围内)。因此,超导磁能存储被预见为“电力”应用,作为电能质量的改善,而不是大规模的能量存储。通过这种方式,它们还可以补偿风力发电机产生的低频谐波。仿真结果表明,在基于电压源变换器的有源滤波器中加入超导磁储能单元可以进一步减轻电流谐波,降低总谐波畸变。为了强调关于这种方法的主要结论,将介绍几次模拟运行。
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